Synthesis and application of Fe3O4@ SiO2@ TiO2 for photocatalytic decomposition of organic matrix simultaneously with magnetic solid phase extraction of heavy …

MA Habila, ZA ALOthman, AM El-Toni, JP Labis… - Talanta, 2016 - Elsevier
Interference of organic compounds in the matrix of heavy metal solution could suppress their
pre-concentration and detection processes. Therefore, this work aimed to develop simple …

Fe 3 O 4–adenine–Zn: a novel, green, and magnetically recoverable catalyst for the synthesis of 5-substituted tetrazoles and oxidation of sulfur containing compounds

T Tamoradi, A Ghorbani-Choghamarani… - New Journal of …, 2017 - pubs.rsc.org
Zinc (II)–adenine complexes were functionalized on Fe3O4 nanoparticles via a versatile,
simple, and inexpensive procedure. This nanostructural material was characterized by FT-IR …

Ni(II)‐Adenine complex coated Fe3O4 nanoparticles as high reusable nanocatalyst for the synthesis of polyhydroquinoline derivatives and oxidation reactions

T Tamoradi, M Ghadermazi… - Applied …, 2018 - Wiley Online Library
In the present study, Fe3O4 nanoparticles were prepared via simple and versatile
procedure. Then, a novel and green catalyst was synthesized by the immobilization of Ni on …

Preparation of a new Fe3O4/starch-g-polyester nanocomposite hydrogel and a study on swelling and drug delivery properties

H Hamidian, T Tavakoli - Carbohydrate polymers, 2016 - Elsevier
A new Fe 3 O 4/starch-g-poly (ethylene phthalate) hydrogel nanocomposite was prepared
using poly (ethylene phthalate) grafted onto starch as a biopolymer. The nanocomposite …

An ionic liquid loaded magnetically confined polymeric mesoporous adsorbent for extraction of parabens from environmental and cosmetic samples

MM Yusoff, M Raoov, N Yahaya, NM Salleh - RSC advances, 2017 - pubs.rsc.org
An ionic liquid loaded magnetically confined polymeric mesoporous adsorbent based
magnetic solid phase extraction (MSPE) procedure has been developed for the extraction …

Magnetite nanoparticles coated with surfactant Sylgard 309 and its application as an adsorbent for paraben extraction from pharmaceutical and water samples

MM Ariffin, NM Sohaimi, BS Yih, NM Saleh - Analytical Methods, 2019 - pubs.rsc.org
In this paper, the extraction of parabens using a newly developed sorbent, Sylgard 309@
MNP, is presented. Sylgard 309@ MNP was prepared by coating Fe3O4 nanoparticles with …

Magnetic nanoparticles coated with ionic liquid as a sorbent for solid phase extraction of chromium (VI) prior to its determination by electrothermal atomic absorption …

M Karimi, AMH Shabani, S Dadfarnia - Journal of the Brazilian …, 2016 - SciELO Brasil
A simple, sensitive and reliable method for the separation, preconcentration and
determination of ultra trace amounts of chromium species has been developed. Chromium …

[HTML][HTML] Facile preparation of an amino-silane coated fe3o4 nanoparticles and its application for separation of antimony (iii) and antimony (v) from aqueous solution

C Caner, MS Dundar, H Altundag - … Engineering and Management …, 2022 - researchgate.net
In this study, a method was developed in which the heavy metal ions of Cu⁺ ², Cd⁺ ², Co⁺ ²,
Ni⁺ ², Pb⁺ ², Zn⁺ ² in water samples are enriched by using cloud point extraction and …

Ion pair dispersive liquid-liquid microextraction for the determination of trace amounts of copper (II) in soil, multivitamin tablet, tea and water samples using flame …

G Khayatian, M Hassanpour - Analytical and Bioanalytical …, 2018 - analchemres.org
Ion pair dispersive liquid-liquid microextraction (IP-DLLME) method combined with flame
atomic absorption spectrometry was proposed for the determination of trace amounts of …

[PDF][PDF] Guanidine-functionalized magnetic Fe3O4 nanoparticles as a new sorbent for preconcentration of heavy metal ions in water samples

MR Fallahi, G Khayatian, A Rostami… - Dig. J. Nanomater …, 2016 - researchgate.net
Heavy metals have been extremely released into the environment due to rapid
industrialization and have created adverse health effects in human metabolism. The present …